Townsley F M, Frigerio G, Pelham H R
MRC Laboratory of Molecular Biology, Cambridge, United Kingdom.
J Cell Biol. 1994 Oct;127(1):21-8. doi: 10.1083/jcb.127.1.21.
The ERD2 gene of Saccharomyces cerevisiae encodes the receptor which retrieves HDEL-containing containing ER proteins from the Golgi apparatus. Viable erd2 mutants have been isolated that show no obvious HDEL-dependent retention of the luminal ER protein BiP, suggesting that retrieval of HDEL proteins is not essential for growth. However, cells that lack Erd2p completely have a defective Golgi apparatus and cannot grow. This observation led to the suggestion that the receptor had a second function, possibly related to its ability to recycle from Golgi to ER. In this paper we investigate the requirements for Erd2p to support growth. We show that mutations that block its recycling also prevent growth. In addition, we show that all mutant receptors that can support growth have a residual ability to retrieve BiP, which is detectable when they are overexpressed. Mere recycling of an inactive form of the receptor, mediated by a cytoplasmic KKXX sequence, is not sufficient for growth. Furthermore, saturation of the receptor by expression of an HDEL-tagged version of pro-alpha factor inhibits growth, even of strains that do not show obvious BiP retention. We conclude that growth requires the HDEL-dependent retrieval of one or more proteins, and that these proteins can be recognized even under conditions where BiP is secreted. Genetic screens have failed to identify any one protein whose loss could account for the Erd2p requirement. Therefore, a growth may require the retention of multiple HDEL proteins in the ER, or alternatively the removal of such proteins from the Golgi apparatus.
酿酒酵母的ERD2基因编码一种受体,该受体可从高尔基体回收含HDEL的内质网蛋白。已经分离出了存活的erd2突变体,这些突变体未显示出腔内内质网蛋白BiP明显的HDEL依赖性保留,这表明回收HDEL蛋白对于生长并非必不可少。然而,完全缺乏Erd2p的细胞具有缺陷的高尔基体,无法生长。这一观察结果表明该受体具有第二种功能,可能与其从高尔基体循环到内质网的能力有关。在本文中,我们研究了Erd2p支持生长的条件。我们发现阻断其循环的突变也会阻止生长。此外,我们表明所有能够支持生长的突变受体都具有回收BiP的残留能力,当它们过度表达时可以检测到。仅由细胞质KKXX序列介导的无活性形式受体的循环不足以支持生长。此外,通过表达带有HDEL标签的前α因子使受体饱和会抑制生长,即使是那些未显示出明显BiP保留的菌株也是如此。我们得出结论,生长需要一种或多种蛋白质的HDEL依赖性回收,并且即使在BiP被分泌的条件下这些蛋白质也能被识别。遗传筛选未能鉴定出任何一种其缺失可解释对Erd2p需求的蛋白质。因此,生长可能需要在内质网中保留多种HDEL蛋白,或者从高尔基体中去除此类蛋白。